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Minimum Energy Resource Allocation in FOG Radio Access Network with Fronthaul and Latency Constraints

机译:具有前传和时延约束的FOG无线电接入网中的最小能源分配

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The fog radio access network has been proposed as a heterogeneous cloud computing system which allows mobile devices to offload computationally intensive tasks to the remote cloud and nearby edge node. In this paper, by taking into account latency and fronthaul constraints, we formulate a computation and communication resource allocation problem for optimally offloading the computation tasks to the remote cloud and the edge node while minimizing the computation and computation energy of the edge node. Due to the binary variables for remote cloud/edge node assignment and complex communication and computation resource constraints, the formulated design problem is challenging to solve. We show that the problem can actually be recast as a convex problem as long as the binary variables are given. Based on this result, we propose a heuristic iterative algorithm for solving the minimum energy resource allocation problem efficiently. Through simulations, we demonstrate that the proposed algorithm performs much better than simply offloading all the tasks into the edge node or the remote cloud.
机译:雾无线电接入网已经被提议为异构云计算系统,其允许移动设备将计算量大的任务卸载到远程云和附近的边缘节点。在本文中,通过考虑延迟和前传约束,我们制定了一种计算和通信资源分配问题,以最佳地将计算任务卸载到远程云和边缘节点,同时最大程度地减少边缘节点的计算和计算能力。由于用于远程云/边缘节点分配的二进制变量以及复杂的通信和计算资源约束,提出的设计问题很难解决。我们表明,只要给出了二进制变量,该问题实际上就可以重铸为凸问题。基于此结果,我们提出了一种启发式迭代算法,可以有效地解决最小能源分配问题。通过仿真,我们证明了所提出的算法比将所有任务轻松卸载到边缘节点或远程云中要好得多。

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